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October 8, 2018Advanced Materials134 citations

1D Sub‐Nanotubes with Anatase/Bronze TiO2 Nanocrystal Wall for High‐Rate and Long‐Life Sodium‐Ion Batteries

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BCBiao ChenYMYuhuan MengFXFangxi Xie

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Abstract

Abstract The development of 1D nanostructures with enhanced material properties has been an attractive endeavor for applications in energy and environmental fields, but it remains a major research challenge. Herein, this work demonstrates a simple, gel‐derived method to synthesize uniform 1D elongated sub‐nanotubes with an anatase/bronze TiO 2 nanocrystal wall (TiO 2 SNTs). The transformation mechanism of TiO 2 SNTs is studied by various ex situ characterization techniques. The resulting 1D nanostructures exhibit, synchronously, a high aspect ratio, open tubular interior, and anatase/bronze nanocrystal TiO 2 wall. This results in excellent properties of electron/ion transport and reaction kinetics. Consequently, as an anode material for sodium‐ion batteries (SIBs), the TiO 2 SNTs display an ultrastable long‐life cycling stability with a capacity of 107 mAh g −1 at 16 C after 4000 cycles and a high‐rate capacity of 94 mAh g −1 at 32 C. This a high‐rate and long‐life performance is superior to any report on pure TiO 2 for SIBs. This work provides new fundamental information for the design and fabrication of inorganic structures for energy and environmental applications.

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Chen et al. (2018) studied this question.

synapsesocial.com/papers/6a299469af7479fce5ddc380https://doi.org/10.1002/adma.201804116
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